Electrical Networks (15 cr)
Code: TX00FA02-3001
General information
- Enrollment
-
01.05.2023 - 31.05.2023
Registration for the implementation has ended.
- Timing
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23.10.2023 - 15.12.2023
Implementation has ended.
- Number of ECTS credits allocated
- 15 cr
- Local portion
- 15 cr
- Mode of delivery
- On-campus
- Unit
- (2019-2024) School of Smart and Clean Solutions
- Campus
- Leiritie 1
- Teaching languages
- Finnish
- Degree programmes
- Electrical and Automation Engineering
- Teacher in charge
- Raisa Kallio
- Course
- TX00FA02
Implementation has 24 reservations. Total duration of reservations is 78 h 0 min.
Time | Topic | Location |
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Tue 24.10.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 ENGLISH |
ENGLISH in Zoom https://metropolia.zoom.us/j/63464745963
|
Wed 25.10.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
Online Zoom
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Thu 26.10.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
Online Zoom
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Mon 30.10.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
MMC360
Sähkötekniikan laboratorio
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Wed 01.11.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 ENGLISH |
ENGLISH in Zoom https://metropolia.zoom.us/j/63464745963
|
Thu 02.11.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
MMC360
Sähkötekniikan laboratorio
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Mon 06.11.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
MMC360
Sähkötekniikan laboratorio
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Tue 07.11.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
Online
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Wed 08.11.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
Online Zoom
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Thu 09.11.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
MMC360
Sähkötekniikan laboratorio
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Mon 13.11.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
MMC360
Sähkötekniikan laboratorio
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Tue 14.11.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
Online
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Wed 15.11.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 ENGLISH |
ENGLISH in Zoom https://metropolia.zoom.us/j/63464745963
|
Thu 16.11.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
MMC360
Sähkötekniikan laboratorio
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Mon 20.11.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
MMC360
Sähkötekniikan laboratorio
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Wed 22.11.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
Online Zoom
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Thu 23.11.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
MMC360
Sähkötekniikan laboratorio
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Mon 27.11.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
MMC360
Sähkötekniikan laboratorio
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Wed 29.11.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
Online Zoom
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Thu 30.11.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
MMC360
Sähkötekniikan laboratorio
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Mon 04.12.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
MMC360
Sähkötekniikan laboratorio
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Thu 07.12.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
MMC360
Sähkötekniikan laboratorio
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Tue 12.12.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
Online Zoom
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Wed 13.12.2023 time 17:00 - 20:15 (3 h 15 min) |
Sähköverkot TX00FA02-3001 |
Online Zoom
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Objective
Student knows the main features of transmission and distribution systems and electrical network design principles. Student understands economic and environmental issues of distribution network planning.
Student knows most important factors related to distribution network reliability.
Student is familiar with most common faults in the distribution network and basic principles of protection.
Student is able to calculate fault current cases in different situations and is familiar with thermal and dynamic dimensioning principles.
Student is familiar with key concepts of the high-voltage technology, among others insulation structures, spark-overs, overvoltage and overvoltage protection.
The student becomes confident in communicating in demanding interaction situations in a professional and communicative manner.
Content
1. Structure and design of electrical transmission and distribution networks
2. Transmission losses, load flow and voltage drop
3. Fault currents: implications, calculation and the most important standards.
4. Protection and dimensioning criteria
5. High voltage technology
6. Inspections of high voltage technology
7. English
8. Electrical safety at work
Materials
Suurjännitetekniikan oppikirja: Aro, Elovaara, Karttunen, Nousiainen, Palva; Suurjännitetekniikka, Otatieto 568, ISBN 978-951-672-375-7, 4. painos 2015 tai uudempi.
Evaluation scale
0-5
Assessment criteria, satisfactory (1)
The student has achieved the course objectives fairly. The student will be able to identify, define and use the course subject area’s concepts and models. The student understands the criteria and principles of the expertise development. The student has completed the required learning exercises in minimum requirement level. His/her competences have developed in a way that he/she may complete the remaining studies in electrical engineering and automation technology and finally work in a suitable job position related to this field.
Assessment criteria, good (3)
The student has achieved the course objectives well, even though the knowledge and skills need improvement on some areas. The student has completed the required learning exercises in good or satisfactory level. The student is able to define the course concepts and models and is able to justify the analysis. The student is able to apply their knowledge in study and work situations. The student understands the importance of expertise in the field of electrical engineering and automation technology and is able to analyze his/her own expertise.
Assessment criteria, excellent (5)
The student has achieved the objectives of the course with excellent marks. The student master commendably the course subject area’s concepts and models. The student has completed the required learning exercises in good or excellent level. The student is able to make justified and fluent analysis and to present concrete development measures. The student is well prepared to apply their knowledge study and work situations. Students are able to analyze the expertise in electrical engineering and automation technology and the evolvement of their own expertise.